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A Robust Method for Adjustment of Laser Speckle Contrast Imaging during Transcranial Mouse Brain Visualization

机译:经颅小鼠大脑可视化过程中激光散斑对比度成像调整的鲁棒方法

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Laser speckle imaging (LSI) is a well-known and useful approach for the non-invasive visualization of flows and microcirculation localized in turbid scattering media, including biological tissues (such as brain vasculature, skin capillaries etc.). Despite an extensive use of LSI for brain imaging, the LSI technique has several critical limitations. One of them is associated with inability to resolve a functionality of vessels. This limitation also leads to the systematic error in the quantitative interpretation of values of speckle contrast obtained for different vessel types, such as sagittal sinus, arteries, and veins. Here, utilizing a combined use of LSI and fluorescent intravital microscopy (FIM), we present a simple and robust method to overcome the limitations mentioned above for the LSI approach. The proposed technique provides more relevant, abundant, and valuable information regarding perfusion rate ration between different types of vessels that makes this method highly useful for in vivo brain surgical operations.
机译:激光散斑成像(LSI)是一种众所周知的,有用的方法,用于无创可视化混浊散射介质(包括生物组织(例如脑血管,皮肤毛细血管等))中的流量和微循环。尽管LSI在脑成像中得到了广泛的应用,但LSI技术仍存在一些关键限制。其中之一与无法解决血管功能有关。这种局限性还导致在定量解释针对不同血管类型(例如矢状窦,动脉和静脉)获得的斑点对比值时出现系统错误。在这里,通过结合使用LSI和荧光活体显微镜(FIM),我们提出了一种简单而强大的方法来克服上述针对LSI方法的局限性。所提出的技术提供了有关不同类型血管之间的灌注速率比的更相关,丰富和有价值的信息,这使得该方法对于体内脑外科手术非常有用。

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